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Simulation Technology of Spaceborne SAR Reconnaissance Effeciency

机译:星载SAR侦察效率仿真技术

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SAR (Synthetic Aperture Radar) satellites can perform reconnaissance on specific areas in all directions. Generally speaking, the scope of reconnaissance is smaller than that of passive reconnaissance. Therefore, orbit and constellation design are more important. Here we use the maximum coverage gap to measure the reconnaissance efficiency of the SAR satellite constellation and the simulation technology is studied. The results show that the change of orbital inclination has a great influence on the maximum revisit interval. The visible range of SAR satellite has a great influence on the maximum revisit interval, as well as the number of orbital planes. Based on this method, the simulation of the space-borne SAR is carried out. The orbit design and optimization of reconnaissance mission design scheme can provide a convenient and effective support platform for the simulation analysis of space-borne SAR missions.
机译:SAR(合成孔径雷达)卫星可以在各个方向上对特定区域进行侦察。一般来说,侦察的范围比被动侦察的范围要小。因此,轨道和星座设计更为重要。在这里,我们使用最大覆盖间隙来测量SAR卫星星座的侦察效率,并研究了仿真技术。结果表明,轨道倾角的变化对最大重返间隔有很大的影响。 SAR卫星的可见范围对最大重访间隔以及轨道平面的数量有很大的影响。基于此方法,对星载SAR进行了仿真。侦察任务设计方案的轨道设计和优化可以为星载SAR任务的仿真分析提供一个方便有效的支持平台。

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